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Determination of the historical variation of the trophic state in lakes using sediment stratigraphies

机译:利用沉积物地层确定湖泊营养状态的历史变化

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摘要

Biogenic silica (BSi) and phosphorous (P) accumulation were investigated in sediment cores from Karlskanrsviken, a bay of Lake Manlaren. The aim was to make use of BSi and P relations in sediment stratigraphies in order to investigate the historical nutrient trophy in a near shore lake environment since the Middle Ages, with focus on industrial times, and to evaluate anthropogenic influences on the bay's trophic state. The BSi accumulation in the sediments is a better indicator of former nutrient pelagic trophy than P accumulation in sediments and for this reason a BSi inferred P (BSi-P) water concentration is calculated. This method enables the determination of the background total phosphorous (TP) concentration (which is related to the reference conditions) in the investigated bay; this background TP is determined equal to 0.020-0.022 mg L-1. There is an increasing trend of BSi-P concentration in the bay since the Middle Ages to the present, about 0.025 mg L-1, with a small decrease in the inner bay section during the last decades. The P accumulation rate is not found to have changed since the 1960s and 1970s, which indicates that the P loading to Karlskanrsviken has not decreased. In Karlskanrsviken, the shallow inner section of the bay, where the water quality is dominated by loading from the bay catchment area, is less nutritious than the water in the outer section, which is influenced by the main streams from the western part of Lake Manlaren.
机译:研究了来自Manlaren湖海湾Karlskanrsviken的沉积岩心中的生物硅(BSi)和磷(P)积累。目的是利用沉积物地层中的BSi和P关系,以研究中世纪以来近岸湖泊环境中的历史养分奖杯,重点是工业时代,并评估人为因素对海湾营养状态的影响。沉积物中的BSi积累比沉积物中的P积累更好地指示了以前的营养上层营养素奖杯,因此,计算出BSi推断的P(BSi-P)水浓度。该方法可以确定所研究海湾中的本底总磷(TP)浓度(与参考条件有关)。确定该背景TP等于0.020-0.022 mg L-1。从中世纪到现在,海湾中的BSi-P浓度呈上升趋势,约为0.025 mg L-1,在过去的几十年中,海湾中的内陆部分有所减少。自1960年代和1970年代以来,未发现P的累积速率发生了变化,这表明向Karlskanrsviken的P负荷并未减少。在卡尔斯坎维肯(Karlskanrsviken),海湾的浅层内部营养丰富,而海湾的浅层营养丰富,而外部区域的水营养不足,而后者受到曼拉伦湖西部的主要水流的影响,而海湾的浅层营养丰富。

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